Breakthrough in anti-reconnaissance technology from a new perspective: A bio-inspired electrochromic device with hyperspectral characteristics of vegetation foliage

Author:

Tang Shengwei,Zhang Hengzhi,Liu Yulin,Zheng Rongzong,Jia Chunyang

Funder

University of Electronic Science and Technology of China

Fundamental Research Funds for the Central Universities

Publisher

Elsevier BV

Reference44 articles.

1. Hyperspectral target detection: an overview of current and future challenges;Nasrabadi;IEEE Signal Proc. Mag.,2014

2. Hyperspectral image super-resolution via recurrent feedback embedding and spatial-spectral consistency regularization;Wang;IEEE t. Geosc. Remote,2022

3. A systematic review on hyperspectral imaging technology with a machine and deep learning methodology for agricultural applications;Khan;Ecol. Inform.,2022

4. Noise reduction in hyperspectral imagery: overview and application;Rasti;Remote Sen.,2018

5. Biomimetic multilayer film simulating solar spectrum reflection characteristics of natural vegetations for optical camouflage;Deng;Opt. Express,2023

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